Dr. Wenli yang – Computer Science and Artifical intelligence – Best Researcher Award 

Dr. Wenli yang - Computer Science and Artifical intelligence - Best Researcher Award 

University of Tasmania  - Australia

Author Profile 

GOOGLE SCHOLAR

🎓 Early academic pursuits

Dr. Wenli yang’s academic journey is rooted in strong interdisciplinary training, having earned dual phds that laid the foundation for her career in artificial intelligence. her early focus on knowledge representation and algorithmic modeling sparked her interest in scalable systems. through rigorous academic training and research exposure, she developed a deep understanding of power electronics, data engineering, and image analysis. this multidisciplinary education shaped her distinctive approach to solving real-world ai challenges using technically grounded methodologies.

👩‍🏫 Professional endeavors

Currently a lecturer at the school of ict, university of tasmania, dr. yang has quickly become a recognized figure in the artificial intelligence research community. she has actively led and contributed to over 10+ research projects and 8+ consultancy/industry projects, showcasing her technical capabilities across domains. her dedication extends beyond academia, with involvement in field-based data collection initiatives and industry-driven sustainability projects. her expertise also spans power electronics, where her data-driven methodologies enhance system efficiency and smart energy solutions.

🧠 Contributions and research focus

Dr. Yang’s research areas include knowledge representation, ai-powered image analysis, explainable ai, and generative ai. she is passionate about building interpretable and robust ai Computer Science and Artifical intelligence models that perform reliably under real-world conditions. having authored 29 peer-reviewed publications, with 20 as first author, she has made consistent contributions to high-impact q1 journals. her recent studies integrate power electronics with intelligent systems, creating scalable algorithms for energy-efficient computing, smart imaging, and automation across scientific domains.

🌐 Impact and influence

Wenli yang’s work has impacted both academic and applied sectors. her h-index of 9 (scopus) and h-index of 12 (google scholar), with over 647 citations, highlight her growing influence in the ai research community. her collaborative initiatives with australia seafood industries (asi), imas, csiro, and sense-t reflect her commitment to applying ai for public good. through ai- Computer Science and Artifical intelligencedriven oyster genotyping and sustainable fisheries management, she has contributed to ecological and operational advancements across australia’s marine industries.

🔮 Legacy and future contributions

Dr. Wenli yang’s vision is to create scalable, transparent, and adaptable ai systems that serve real-world applications. she continues to expand her research in explainable ai and data Computer Science and Artifical intelligence engineering, with future goals focused on integrating power electronics into intelligent systems for sustainable smart environments. her legacy lies in bridging theoretical research with field impact, inspiring future generations to pursue responsible and innovative ai solutions across multidisciplinary domains.

Notable Publications 

  • Title: A survey on blockchain-based internet service architecture: requirements, challenges, trends, and future
    Author(s): W. Yang, E. Aghasian, S. Garg, D. Herbert, L. Disiuta, B. Kang
    Journal: IEEE Access

  • Title: Survey on explainable AI: From approaches, limitations and applications aspects
    Author(s): W. Yang, Y. Wei, H. Wei, Y. Chen, G. Huang, X. Li, R. Li, N. Yao, X. Wang, X. Gu, ...
    Journal: Human-Centric Intelligent Systems

  • Title: Blockchain: Trends and future
    Author(s): W. Yang, S. Garg, A. Raza, D. Herbert, B. Kang
    Journal: Knowledge Management and Acquisition for Intelligent Systems: 15th Pacific …

  • Title: Design of intelligent transportation system supported by new generation wireless communication technology
    Author(s): W. Yang, X. Wang, X. Song, Y. Yang, S. Patnaik
    Journal: International Journal of Ambient Computing and Intelligence (IJACI)

  • Title: A decision model for blockchain applicability into knowledge-based conversation system
    Author(s): W. Yang, S. Garg, Z. Huang, B. Kang
    Journal: Knowledge-Based Systems

Assist. Prof. Dr. Gan Li – High Performance Manufacturing – Excellence in Research

Assist. Prof. Dr. Gan Li - High Performance Manufacturing - Excellence in Research

China University of Petroleum - China 

Author Profile 

SCOPUS 

ORCID 

🎓 Early academic pursuits

Gan Li began his academic journey with a dual bachelor's degree in mechanical design, manufacturing and automation, and engineering management from the china university of petroleum (east china) in 2018. his outstanding academic record and passion for high-precision engineering led him to pursue a ph.d. at the state key laboratory of high-performance precision manufacturing, school of mechanical engineering, dalian university of technology. completing his doctorate at just 26, he focused on pushing the boundaries of intelligent manufacturing and ultra-precision machining technologies, laying a strong foundation for his future innovations.

🚀 Professional endeavors

Dedicated to advancing cutting-edge engineering, dr. gan li currently serves as a lecturer at the college of mechanical and electronic engineering, china university of petroleum. he is also a vital member of the national engineering research center of marine geophysical prospecting and exploration and development equipment. his work encompasses diverse areas, including nontraditional machining, grinding technologies for hard and brittle materials, and the development of ultra-precision machine tools. his role as a researcher and educator has cemented his position as a rising star in china's manufacturing and engineering landscape.

🔬 Contributions and research focus

Dr. Li's research delves deep into intelligent manufacturing systems and ultra-precision machining. he has made significant breakthroughs in grinding technologies, particularly for materials with complex geometries and extreme hardness, such as tungsten alloys. his contributions to the development of advanced machining equipment and methodologies have led to enhanced High Performance Manufacturing precision and efficiency in industrial processes. with a strong focus on automation and simulation, his work supports the integration of new technologies in traditional manufacturing, creating innovative solutions for industrial challenges.

🏆 Accolades and recognition

Recognized for his technical ingenuity, dr. gan li has secured prestigious research grants including those from the ministry of education of the people's republic of china, the taishan scholars project, and the natural science foundation of shandong province. his innovative spirit is reflected in six granted patents, which encompass new techniques and devices for grinding operations High Performance Manufacturing and cnc machinery. each patent showcases his ability to address real-world challenges through engineering excellence, earning him a respected place among china's next generation of research leaders.

👨‍💼 Impact and influence

Dr. Li's research has directly influenced the design and manufacturing of next-generation ultra-precision equipment. his patented inventions, including grinding wheel measuring devices and High Performance Manufacturing pipe inspection robots, have paved the way for smarter, more efficient manufacturing solutions. his work not only impacts academia but also has strong implications for the mechanical and oil industries. his role in national research teams allows him to bridge academic innovation with practical application, contributing to the modernization of china’s high-performance manufacturing sector.

🌍 Legacy and future contributions

A visionary in his field, dr. gan li is committed to furthering research in ultra-precision technologies and intelligent systems. his future endeavors aim to enhance machining accuracy and automation while fostering collaboration between academic institutions and industries. by mentoring emerging researchers and engaging in transformative projects, he continues to shape the future of precision manufacturing. his legacy lies in building sustainable, intelligent machining technologies that will support innovation for years to come

Notable Publications 

  1. Title: A visualization method for cross-scale online monitoring of grinding state based on data-mechanism hybrid-driven digital twin system
    Authors: Gan Li, Haoxiang Lu, Hao Wang, Yichuan Ran, Renjie Ji, Yonghong Liu, Yanzhen Zhang, Baoping Cai, Xiaokang Yin
    Journal: Mechanical Systems and Signal Processing


  1. Title: Residual stress and subsurface damage prediction in tungsten heavy alloy face grinding
    Authors: Gan Li, Jinbo Liu, Hao Wang, Zhigang Dong, Renke Kang, Yan Bao
    Journal: Journal of Manufacturing Processes


  1. Title: Research on grinding wheel wear measurement methods: Current status and future perspectives
    Authors: Li Gan, Bao Yan, Wang Zhongwang, Kang Renke, Dong Zhigang
    Journal: 中国科学. 技术科学 (Science China Technological Sciences)


  1. Title: Wheel Wear of Tungsten Heavy Alloy Precision Grinding and Its Influence Mechanism on Surface Quality
    Authors: Li Gan, Kang Renke, Dong Zhigang, Wang Hao, Wang Zhongwang, Bao Yan
    Journal: Hunan Daxue Xuebao / Journal of Hunan University (Natural Sciences)


  1. Title: Undeformed chip thickness models for precise vertical-spindle face grinding of tungsten heavy alloy
    Authors: Gan Li, Renke Kang, Hao Wang, Yan Bao, Yidan Wang
    Journal: Precision Engineering

Assoc. Prof. Dr. Chafaa Maatoug Hamrouni – Electric Vehicules- Robots- Computer sciences – Best Researcher Award

Assoc. Prof. Dr. Chafaa Maatoug Hamrouni - Electric Vehicules- Robots- Computer sciences - Best Researcher Award

Taif University - khurma University Collegue - Saudi Arabia

Author Profile 

GOOGLE SCHOLAR 

🎓Early academic pursuits

Dr. Chafaa Hamrouni embarked on his academic journey with a deep passion for telecommunications and intelligent systems. he pursued rigorous studies in electrical engineering, focusing on satellite communication technologies, fuzzy logic systems, and antenna networks. his early research laid the foundation for his future contributions to next-generation communication systems, including ultra-wideband (uwb) antennas, multiple-input multiple-output (mimo) systems, and femto-satellite communication networks.

🚀 Professional endeavors

Dr. Hamrouni is currently associated with taif university, where he actively contributes to cutting-edge research in satellite communications and artificial intelligence-driven networks. he has collaborated with esteemed institutions and researchers worldwide, leading multiple innovative projects. his expertise spans a broad spectrum, from designing advanced antenna networks for small satellites to optimizing power systems for pico-satellites. his professional journey is marked by an unwavering commitment to technological advancements in wireless communication and signal processing.

⚛️ Contributions and research focus

Dr. Hamrouni has made significant contributions to the field of wireless communications, with a particular emphasis on satellite and small-scale antenna systems. his research explores the development of uwb-mimo antenna arrays, metamaterial-based high-isolation antennas, and intelligent fuzzy logic controllers for smart mobility management. his groundbreaking work in Electric Vehicules- Robots- Computer sciences. energy harvesting relays and error-prone forwarding has provided new insights into optimizing coded cooperative communication. he has also developed innovative methodologies for congestion management in 6g networks and signal processing in mobile systems, pushing the boundaries of modern communication technology.

🏆 Accolades and recognition

Dr. Hamrouni's outstanding research has been published in renowned journals such as computers, materials & continua, international journal of advanced computer science and applications, and journal of multimedia information system. his work on nano-satellites for water quality management and autopilot systems for aircraft models has been widely recognized. he has received Electric Vehicules- Robots- Computer sciences. accolades for his contributions to signal processing, electromagnetic energy recovery, and intelligent electrical power subsystems for pico-satellites. his expertise is frequently sought in international conferences and symposiums, cementing his reputation as a leading researcher in the field.

🔄 Impact and influence

The impact of dr. hamrouni’s research extends far beyond academia. his work on fuzzy logic-controlled antenna networks has influenced the design of next-generation communication Electric Vehicules- Robots- Computer sciences. satellites, while his studies on femto-satellite applications have paved the way for innovative advancements in telecommunications. his contributions to homomorphic cryptosystems have also enhanced data security in cloud computing, ensuring safer and more reliable digital transactions. his influence is evident in the growing adoption of his methodologies in satellite communication and smart mobility management.

🌟 Legacy and future contributions

As a pioneer in the field of intelligent communication systems, dr. hamrouni continues to shape the future of satellite technology. his ongoing research in hierarchical fuzzy logic-based power subsystems for pico-satellites and new optimization techniques for mobile networks is expected to drive significant advancements. his legacy lies in his ability to merge artificial intelligence with satellite communication, creating efficient, high-performance networks for future generations. through his mentorship and collaboration with researchers worldwide, he is nurturing the next wave of innovators who will carry forward his groundbreaking work.

Notable Publications 

  • Title: Design and prototype of a flight microstrip antennas for the Pico satellite ERPSat-1
    Author(s): C. Hamrouni, B. Neji, A.M. Alimi, K. Schilling
    Journal: 2009 4th International Conference on Recent Advances in Space Technologies

  • Title: A new UWB-MIMO multi-antennas with high isolation for satellite communications
    Author(s): C. Abdelhamid, M. Daghari, H. Sakli, C. Hamrouni
    Journal: 2019 15th International Wireless Communications & Mobile Computing

  • Title: ERPSat-1 scientific pico satellite development
    Author(s): B. Neji, C. Hamrouni, A.M. Alimi, A.R. Alim, K. Schilling
    Journal: 2010 IEEE International Systems Conference

  • Title: Design and prototype of an image capturing and processing system for ERPSat-1 Pico Satellite
    Author(s): B. Neji, C. Hamrouni, A.M. Alimi, K. Schilling
    Journal: 2009 4th International Conference on Recent Advances in Space Technologies

  • Title: Hierarchical fuzzy-logic-based electrical power subsystem for PICO satellite ERPSat-1
    Author(s): B. Neji, C. Hamrouni, A.M. Alimi, H. Nakajima, A.R. Alim
    Journal: IEEE Systems Journal